黄庆研, 梁雅莉, 王俊荣, 谢光明, 王春香, 李之锋. 烧成温度对溶胶凝胶法合成LiNi0.8Co0.1Mn0.1O2材料性能的影响[J]. 有色金属科学与工程, 2020, 11(6): 64-70. DOI: 10.13264/j.cnki.ysjskx.2020.06.009
引用本文: 黄庆研, 梁雅莉, 王俊荣, 谢光明, 王春香, 李之锋. 烧成温度对溶胶凝胶法合成LiNi0.8Co0.1Mn0.1O2材料性能的影响[J]. 有色金属科学与工程, 2020, 11(6): 64-70. DOI: 10.13264/j.cnki.ysjskx.2020.06.009
HUANG Qingyan, LIANG Yali, WANG Junrong, XIE Guangming, WANG Chunxiang, LI Zhifeng. Effect of sintering temperature on properties of LiNi0.8Co0.1Mn0.1O2 material synthesized by sol-gel method[J]. Nonferrous Metals Science and Engineering, 2020, 11(6): 64-70. DOI: 10.13264/j.cnki.ysjskx.2020.06.009
Citation: HUANG Qingyan, LIANG Yali, WANG Junrong, XIE Guangming, WANG Chunxiang, LI Zhifeng. Effect of sintering temperature on properties of LiNi0.8Co0.1Mn0.1O2 material synthesized by sol-gel method[J]. Nonferrous Metals Science and Engineering, 2020, 11(6): 64-70. DOI: 10.13264/j.cnki.ysjskx.2020.06.009

烧成温度对溶胶凝胶法合成LiNi0.8Co0.1Mn0.1O2材料性能的影响

Effect of sintering temperature on properties of LiNi0.8Co0.1Mn0.1O2 material synthesized by sol-gel method

  • 摘要: 通过溶胶-凝胶法制备LiNi0.8Co0.1Mn0.1O2正极材料,研究了烧成温度对材料结构、形貌和电化学性能的影响。采用XRD、SEM及恒流充放电测试对材料性能进行表征。分析结果表明,材料均呈现典型的α-NaFeO2层状结构且阳离子有序度较好。不同烧成温度时材料形貌呈现不规则块状且粒径随着温度的增加而增大; 温度低于780 ℃时,材料结晶性不好,生长不完全; 温度高于800 ℃时,材料团聚现象严重、形貌不规整。烧成温度为800 ℃时材料有较好的电化学性能,在5 C高倍率充放电下,首次放电比容量为147.95 mAh/g,循环200次后,容量保持率为76.71%。

     

    Abstract: LiNi0.8Co0.1Mn0.1O2 cathode materials were prepared by sol-gel method. The structure, morphology and electrochemical performance of the materials synthesized by the different sintering temperature were characterized through XRD, SEM and constant current charge and discharge tests. The results show that all the materials are characterized by a typical α-NaFeO2 layered structure with good cation order. The morphology of the cathode materials shows irregular block shape. The particle size increases with the higher sintering temperature. At the same time, the crystal face is not well developed with poor crystallinity when the sintering temperature is lower than 780 ℃. However, the primary particles are easy to agglomerate when the sintering temperature is higher than 800 ℃. The cathode materials sintered at 800 ℃ has the best electrochemical performance: the first discharge specific capacity is 147.95 mAh/g at 5 C high rate charge and discharge after 200 cycles. The capacity retention rate reaches 76.71%.

     

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